首页> 外文期刊>Renewable & Sustainable Energy Reviews >High efficiency dye-sensitized solar cell based on a novel gel polymer electrolyte containing RbI and tetrahexylammonium iodide (Hex_4NI) salts and multi-layered photoelectrodes of TiO_2 nanoparticles
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High efficiency dye-sensitized solar cell based on a novel gel polymer electrolyte containing RbI and tetrahexylammonium iodide (Hex_4NI) salts and multi-layered photoelectrodes of TiO_2 nanoparticles

机译:基于新型凝胶聚合物电解质的高效染料敏化太阳能电池,该电解质包含RbI和四己基碘化铵(Hex_4NI)盐以及TiO_2纳米粒子的多层光电极

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High efficiency dye sensitized solar cells (DSSCs) have been achieved using a novel polymer gel electrolyte containing RbI and tetrahexylammonium iodide (Hex(4)NI) binary salts in combination with multi-layered TiO2 photoelectrodes. Performance enhancers were incorporated to the electrolyte to improve the efficiency in the DSSCs. Varying the salt mass fraction, showed that the conductivity in the electrolyte increases with increasing amount of RbI. The highest ionic conductivity of 4.19 mS cm(-1) is exhibited by the electrolyte sample with RbI: Hex(4)NI weight ratio of 3:1 at 25 degrees C. The temperature dependence of the electrolytes shows Arrhenius behavior. It is found that the electrolyte with RbI: Hex(4)NI weight ratio of 1.06:1 is more suitable for DSSC's applications and it has a conductivity of 3.77 mS cm(-1). A colloidal suspension of P25 TiO2 nanoparticles was used to make the spin coated photo-anodes in the form of stacks of 1-6 layers. The formation of a highly uniform and porous structure is observed with increasing number of layers from scanning electron microscopy and X-ray diffraction studies revealed that the layers are predominantly anatase phase with crystallite size of 19-22 nm. The band gap was estimated to be around 3.22 eV based on UV-Visible spectroscopy and found to be decreasing slightly with increasing layer thickness. The maximum efficiency of 7.5% and an impressively high current density of 20 mA cm(-2) were observed for the 4-layer device with the new gel electrolyte based on RbI and Hex(4)NI. This study not only brings reliability and consistency to the ways of preparing well-ordered TiO2 photoanodes but also offers the possibility of low-cost practical and highly efficient quasi-solid state DSSCs.
机译:高效染料敏化太阳能电池(DSSCs)已通过使用一种新型聚合物凝胶电解质来实现,该电解质包含RbI和四己基碘化铵(Hex(4)NI)二元盐以及多层TiO2光电极。电解质中加入了性能增强剂,以提高DSSC的效率。改变盐的质量分数,表明电解质中的电导率随RbI量的增加而增加。在25摄氏度时,RbI:Hex(4)NI重量比为3:1的电解质样品显示出4.19 mS cm(-1)的最高离子电导率。电解质的温度依赖性显示出Arrhenius行为。已发现,RbI:Hex(4)NI重量比为1.06:1的电解质更适合DSSC的应用,其电导率为3.77 mS cm(-1)。 P25 TiO2纳米粒子的胶体悬浮液用于制备1-6层堆叠形式的旋涂光阳极。扫描电子显微镜观察到随着层数的增加,形成了高度均匀和多孔的结构,X射线衍射研究表明这些层主要是锐钛矿相,晶粒尺寸为19-22 nm。根据紫外可见光谱法,该带隙估计为3.22 eV左右,并且发现随着层厚度的增加,带隙略有减小。对于具有基于RbI和Hex(4)NI的新型凝胶电解质的4层设备,观察到最大效率为7.5%,电流密度高达20 mA cm(-2)。这项研究不仅为制备有序的TiO2光阳极带来了可靠性和一致性,而且为低成本实用和高效的准固态DSSC提供了可能性。

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